Verkor

高级电池组系统仿真工程师

加入Verkor,担任格勒诺布尔高级电池系统仿真工程师。负责开发多领域电池包模型,支持汽车应用。与CAE团队紧密合作,优化仿真和控制策略。享受创新环境,推动可再生能源技术发展。
Verkor
Verkor
格勒诺布尔, 法国 现场 全职 UTC+02:00

Verkor

公司简介

Verkor

法国格勒诺布尔

2020年

约1200名员工(来源:verkor.com)。2023年没有可用的收入数据。

他们的业务

Verkor是一家法国私营电池制造商,专注于生产低碳足迹的锂离子电池单元,优化用于电动交通和固定储能。公司专注于创新技术,确保高功率、高能量密度、快速充电,以及在极端温度下的耐用性和稳健性。这些创新在他们位于格勒诺布尔的Verkor创新中心(VIC)得到验证,该中心作为研发实验室和试点生产线(来源:verkor.com)。Verkor为多个领域生产灵活的电池单元,包括乘用车、商用车和固定储能系统,特别关注可再生能源的长期效率。

项目与背景

目前,Verkor的旗舰项目是位于敦刻尔克港附近的Bourbourg超级工厂,初始产能为每年16 GWh,能够为约300,000辆汽车生产电池。该工厂于2025年12月11日至12日正式启用,预计到2030年将达到50 GWh的产能,总成本估计在20亿至30亿欧元之间(来源:verkor.com)。尽管尚未实现全面生产,格勒诺布尔的VIC已经开始生产电池单元和模块,并将这些初步产品转移到超级工厂进行组装。主要客户包括雷诺集团,预计从2025年起每年提供12 GWh的合同,以及EDF,签署了33 MW的核电分配合同。

近期发展

在过去两年中,Verkor为其超级工厂获得了超过20亿欧元的C轮融资,以及来自19家银行的13亿欧元绿色贷款。Bourbourg超级工厂的开幕标志着一个重要的里程碑,预计首批电池生产将在2026年进行。此外,2025年12月3日与EDF签署了一项为期12年的合同,以提供低碳核能,从而增强了Verkor在可持续能源领域的地位(来源:verkor.com)。这些发展是建立欧洲电池生产主权更广泛战略的一部分。

在Verkor工作

Verkor正在招聘能源、汽车、交通领域的专家,以及专注于电池设计和制造的技术人员和工程师。职位主要位于格勒诺布尔和Bourbourg,预计在全面运营时将创造1200个直接就业机会,并在2030年前创造多达2000个间接就业机会(来源:verkor.com)。企业文化强调承诺、沟通和团队精神,营造一个协作和创新的工作环境,周围环绕着格勒诺布尔的群山,该市在2022年被评为欧洲绿色首都。


最后更新于 2月 23, 2026 | 报告问题

Job Description

As a Senior Battery Pack System Simulation Engineer, you are responsible for developing and maintaining system-level battery pack models to support battery pack development across all applications, including automotive.

You build and integrate surrogate/reduced-order models in close collaboration with the CAE engineers covering electrical, electrochemical, thermal, mechanical, durability, control, safety, and optimization aspects of battery pack systems.

You own your surrogate/equivalent-circuit/reduced-order model requirements and the associated parameter identification and validation workflows, in close collaboration with the CAE engineers and with support from BMS, testing, and validation engineers.

You provide simulation-based insight to support architecture trade-offs, control development, performance prediction, lifetime assessment, and safety-oriented engineering decisions.

This role is part of the CAE & Advanced Methods Group and supports the Battery Pack and System Group with system-level simulation evidence for pack architecture justification, optimization, root-cause analysis, and with control-oriented simulations for BMS/BTMS calibration, validation, robustness and verification.

Main Responsibilities

System-Level Battery Pack Model Development & Simulation

  • Develop and maintain multi-domain battery pack models representing electrical, electrochemical and thermal behaviors as well as pack durability, swelling and cooling loop operation and control.
  • Define the appropriate model fidelity and simulation approach depending on project phase, use case, and required decision timeline.
  • Develop and operate workflows for trade-off studies, sensitivity analysis, design of experiments, surrogate model generation, and multi-objective optimization (safety constraints, integration constraints, mass, and cost-related drivers, ...)
  • Assess implication of control strategy and BMS/BTMS algorithms on system operation and fault scenarios (MiL, SiL).
  • Run simulations for normal (usage profiles, testing, thermal) and fault conditions, including cooling loss scenarios, sensor failures or drift, electrical fault conditions, thermal excursions, and safety-relevant operational limit studies.
  • Model and workflow standardization, automation and documentation

Empirical & EC-Type Model Requirements, Development & Parameter Identification

  • Establish and own model requirements for equivalent circuit, thermal, ML, and other empirical/surrogate/reduced-order battery models for system simulation and control-oriented applications under normal and fault scenarios.
  • Support CAE engineers for the development, maintenance, and deployment of ECM/ROM/ML/surrogate models.
  • Coordinate model parameter identification with CAE, testing, and product validation engineers at the cell, module, and pack levels, including OCV and DCIR/ACIR, SOC/temperature dependencies, and aging-related parameter evolution.
  • Maintain model assumptions and limitations, parameter traceability, model-change traceability, validation status, applicability domain, and release and usage guidelines.

Multi-Physics Model Integration

  • Integrate domain knowledge into the battery pack system models and translate high-fidelity simulation inputs into fast and decision-oriented system models in close collaboration with CAE engineers.
  • Develop co-simulation workflows with integrated high-fidelity models through direct coupling or using FMI/FMUs.

BMS/BTMS Algorithm Development & Control-Oriented Support

  • Develop advanced state estimation (SOC, SOH, SOX) algorithms, including KF, MHE, physics-based, and machine-learning approaches and incorporate/execute in system simulation workflows.
  • Evaluate/recommend voltage/current/temperature limits, derating strategies, balancing impact, temperature non-uniformity, cooling system operation limits and constraints, sensor sensitivity, etc.
  • Contribute to Verkor's IP portfolio.
  • Provide simulation support to the BMS development engineer for model-based verification and validation, including estimator robustness and calibration, MiL, SiL and HiL test bench.

Requirements

  • Master's degree (Bac+5) or PhD in Electrical Engineering, Systems Engineering, Control Engineering, Mechanical Engineering, or equivalent.
  • Specialized knowledge in system control design and state estimation algorithms (KF, MHE, ML, empirical, ...), Li-ion battery cells and packs, BMS and BTMS, MiL, SiL.
  • 5 years of experience minimum in battery or other electrified system simulation (automotive OEMs/Tier 1 suppliers preferred), including state estimation and control, with demonstrated technical track record and model development/maintenance ownership.
  • Proficiency in system simulation tools (Simulink, Simscape/Modelica, Ansys Twin Builder, Amesim, ...) and scientific coding (Python, Matlab).
  • Experience in surrogate and reduced-order modelling, including model building, calibration, and validation.
  • Experience in multi-domain system model integration and model-based system design.
  • Experience in multi-objective optimization (trade-offs, pareto front, etc.), statistical analysis (error propagation, uncertainty quantification, robustness, etc.), and other study scenarios.
  • Familiar with electrochemical engineering, battery chemistries (NMC, LFP, ...), thermal engineering, and battery durability.
  • Familiar with battery safety and system fault scenarios.
  • Proficiency in English / French is a plus.

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职位详情

2026年6月10日

全职

公司

2026年6月12日

现场

储能

Verkor

verkor.com

  •  格勒诺布尔, 法国

5 years minimum

UTC+02:00